Deep-Learning Terahertz Single-Cell Metabolic Viability Study.

ACS Nano

John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts 02138, United States.

Published: November 2023

AI Article Synopsis

  • The text discusses a new method for assessing cell viability that focuses on measuring the metabolic function of individual cells using terahertz laser beams, instead of traditional culture methods.
  • A convolution neural classification network analyzes the morphology of the cells to evaluate their viability based on terahertz absorbance, creating a model that links absorbance changes to cell health, especially during stress like apoptosis.
  • This innovative technique is described as accurate, does not require labels or direct contact with the cells, and minimizes interference, making it valuable for applications such as drug screening and studying cell death processes.

Article Abstract

Cell viability assessment is critical, yet existing assessments are not accurate enough. We report a cell viability evaluation method based on the metabolic ability of a single cell. Without culture medium, we measured the absorption of cells to terahertz laser beams, which could target a single cell. The cell viability was assessed with a convolution neural classification network based on cell morphology. We established a cell viability assessment model based on the THz-AS (terahertz-absorption spectrum) results as = (), where is the terahertz absorbance and is the cell viability, and , , and are the fitting parameters of the model. Under water stress the changes in terahertz absorbance of cells corresponded one-to-one with the apoptosis process, and we propose a cell 0 viability definition as terahertz absorbance remains unchanged based on the cell metabolic mechanism. Compared with typical methods, our method is accurate, label-free, contact-free, and almost interference-free and could help visualize the cell apoptosis process for broad applications including drug screening.

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Source
http://dx.doi.org/10.1021/acsnano.3c06084DOI Listing

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